The central engine of the highest redshift blazar
arXiv:2201.08863 · doi:10.1051/0004-6361/202142335
Abstract
We report on a LUCI/Large Binocular Telescope near-infrared (NIR) spectrum of PSO J030947.49+271757.31 (hereafter PSO J0309+27), the highest redshift blazar known to date (z6.1). From the C1549 broad emission line we found that PSO J0309+27 is powered by a 1.4510M supermassive black hole (SMBH) with a bolometric luminosity of 810 erg s and an Eddington ratio equal to 0.44. We also obtained new photometric observations with the Telescopio Nazionale Galileo in J and K bands to better constrain the NIR Spectral Energy Distribution of the source. Thanks to these observations, we were able to model the accretion disk and to derive an independent estimate of the black hole mass of PSO J0309+27, confirming the value inferred from the virial technique. The existence of such a massive SMBH just 900 million years after the Big Bang challenges models of the earliest SMBH growth, especially if jetted Active Galactic Nuclei are associated to a highly spinning black hole as currently thought. Indeed, in a Eddington-limited accretion scenario and assuming a radiative efficiency of 0.3, typical of a fast rotating SMBH, a seed black hole of more than 10 M at z = 30 is required to reproduce the mass of PSO J0309+27 at redshift 6. This requirement suggests either earlier periods of rapid black hole growth with super-Eddington accretion and/or that only part of the released gravitational energy goes to heat the accretion disk and feed the black hole.
10 pages, 5 figures, 2 tables; Accepted to publication in A&A
References in corpus (33)
- A Catalog of Quasar Properties from SDSS DR7
- Formation of Supermassive Black Holes by Direct Collapse in Pregalactic Halos
- Active Galactic Nuclei: what's in a name?
- Direct cosmological simulations of the growth of black holes and galaxies
- Biases in Virial Black Hole Masses: An SDSS Perspective
- A Luminous Quasar at Redshift 7.642
- Pōniuā'ena: A Luminous Quasar Hosting a 1.5 Billion Solar Mass Black Hole
- Physical properties of 15 quasars at
- Formation of the first nuclear clusters and massive black holes at high redshift
- Accretion onto the First Stellar Mass Black Holes
- Super-Critical Growth of Massive Black Holes from Stellar-Mass Seeds
- Gemini Near-infrared Spectroscopy of Luminous z~6 Quasars: Chemical Abundances, Black Hole Masses, and MgII Absorption
- CIV 1549 as an Eigenvector 1 Parameter for Active Galactic Nuclei
- Black hole masses and enrichment of z ~ 6 SDSS quasars
- Correcting CIV-Based Virial Black Hole Masses
- Rapid growth of seed black holes in the early universe by supra-exponential accretion
- The UKIRT Hemisphere Survey: Definition and J-band Data Release
- Constraining the high redshift formation of black hole seeds in nuclear star clusters with gas inflows
- Why z > 1 radio-loud galaxies are commonly located in proto-clusters
- The discovery of a highly accreting, radio-loud quasar at z=6.82
- On the geometry of broad emission region in quasars
- Blazar candidates beyond redshift 4 observed by Swift
- Correlations of Quasar Optical Spectra with Radio Morphology
- Hyperaccreting black holes in galactic nuclei
- Jet enhanced accretion growth of supermassive black holes
- Blazars at the Cosmic Dawn
- The space density of z>4 blazars
- Rapid Black Hole Growth at the Dawn of the Universe: A Super-Eddington Quasar at z=6.6
- SDSS J013127.34-032100.1: a candidate blazar with a 11 billion solar mass black hole at =5.18
- The evolution of the heaviest super-massive black-holes in jetted AGNs
- The Most Massive Active Galactic Nuclei at
- CIV emission line properties and uncertainties in black hole mass estimates of z ~ 3.5 quasars
- The Impact of the CMB on the Evolution of high-z Blazars